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MAGNETOCALORIC BENCH: ANALYTICAL MODEL FOR GADOLINIUM CHARACTERISTICS

机译:磁热台:CHA特性的分析模型

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Active magnetic refrigeration cycle analysis for different waveforms both magnetic field and heat transfer fluid velocity is an essential issue to design and implement heating and cooling applications based on magneto-caloric effect. Modelling the multiphysics phenomena that occur inside the magnetocaloric regenerators requires the coupling of magnetostatic, magnetocaloric and thermofluidic models.rnThe global interest of the contribution presented here is to decrease the resolution time of the magnetostatic model. Indeed, the multi-physics model integrating this fast magnetostatic model needs much less computation time and ensures its compatibility with an optimization process.rnIn this context, an analytical modelling of magnetostatic phenomena is developed by taking into account the nonlinear behaviour of the ferromagnetic external circuit as well as the active magnetocaloric material (MCM). The analytical model calculates the values of the magnetic field and the magnetic flux density at each point of the regenerator volume. Moreover, the model considers the dependency of magnetic model B(H_(int)) with the temperature in the case of the magnetocaloric material characteristics obtained experimentally.
机译:对磁场和传热流体速度不同的波形进行主动磁制冷循环分析是设计和实现基于磁热效应的加热和冷却应用的重要问题。对发生在磁热蓄热器内部的多物理场现象进行建模需要将静磁,磁热和热流体模型耦合。此处提出的贡献的全球关注在于减少静磁模型的解析时间。实际上,集成了此快速静磁模型的多物理模型所需的计算时间大大减少,并确保了其与优化过程的兼容性。rn在这种情况下,通过考虑铁磁外部电路的非线性行为,建立了静磁现象的解析模型。以及活性磁热材料(MCM)。分析模型计算出蓄热室容积各点的磁场值和磁通密度。此外,在通过实验获得的磁热材料特性的情况下,该模型考虑了磁性模型B(H_(int))与温度的相关性。

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